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Discrete Differential Geometry Applied to the Coil-End Design of Superconducting Magnets

机译:离散微分几何在超导磁体线圈端设计中的应用

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摘要

Coil-end design for superconducting accelerator magnets, based on the continuous strip theory of differential geometry, has been introduced by Cook in 1991. A similar method has later been coupled to numerical field calculation and used in an integrated design process for LHC magnets within the CERN field computation program ROXIE. In this paper we present a discrete analog on to the continuous theory of strips. Its inherent simplicity enhances the computational performance, while reproducing the accuracy of the continuous model. The method has been applied to the design of coil ends for the SIS300 dipole magnets of the FAIR project.
机译:1991年,Cook提出了基于微分几何学的连续带状理论的超导加速器磁体的线圈端设计。一种类似的方法后来被耦合到数值场计算中,并用于超导加速器磁体中LHC磁体的集成设计过程中。 CERN现场计算程序ROXIE。在本文中,我们提出了带状连续理论的离散模拟。它固有的简单性提高了计算性能,同时再现了连续模型的准确性。该方法已应用于FAIR项目的SIS300偶极磁体的线圈端设计。

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